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doc: make it easier to read how to enable extensions...
doc: make it easier to read how to enable extensions We tell people all the time that enabling extensions is not a scary thing to do, but we don't make it easy enough for an absolute novice to do so. When they see a suggestion to do "hg extfoo bar", the error message tells them "see hg help extensions", but that help page doesn't actually tell them where configuration files are. Furthermore, the big warning about why extensions aren't enabled by default should be pushed down a little bit. Most of the extensions shipped by hg are not all that scary, and some very basic and useful cosmetic extensions like graphlog, color, pager, and progress, should be enabled for many hg users.

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worker.py
160 lines | 4.4 KiB | text/x-python | PythonLexer
Bryan O'Sullivan
worker: count the number of CPUs...
r18635 # worker.py - master-slave parallelism support
#
# Copyright 2013 Facebook, Inc.
#
# This software may be used and distributed according to the terms of the
# GNU General Public License version 2 or any later version.
Bryan O'Sullivan
worker: estimate whether it's worth running a task in parallel...
r18636 from i18n import _
Bryan O'Sullivan
worker: add missing import of errno...
r18914 import errno, os, signal, sys, threading, util
Bryan O'Sullivan
worker: count the number of CPUs...
r18635
def countcpus():
'''try to count the number of CPUs on the system'''
# posix
try:
n = int(os.sysconf('SC_NPROCESSORS_ONLN'))
if n > 0:
return n
except (AttributeError, ValueError):
pass
# windows
try:
n = int(os.environ['NUMBER_OF_PROCESSORS'])
if n > 0:
return n
except (KeyError, ValueError):
pass
return 1
Bryan O'Sullivan
worker: estimate whether it's worth running a task in parallel...
r18636
def _numworkers(ui):
s = ui.config('worker', 'numcpus')
if s:
try:
n = int(s)
if n >= 1:
return n
except ValueError:
raise util.Abort(_('number of cpus must be an integer'))
return min(max(countcpus(), 4), 32)
if os.name == 'posix':
_startupcost = 0.01
else:
_startupcost = 1e30
def worthwhile(ui, costperop, nops):
'''try to determine whether the benefit of multiple processes can
outweigh the cost of starting them'''
linear = costperop * nops
workers = _numworkers(ui)
benefit = linear - (_startupcost * workers + linear / workers)
return benefit >= 0.15
Bryan O'Sullivan
worker: partition a list (of tasks) into equal-sized chunks
r18637
Bryan O'Sullivan
worker: allow a function to be run in multiple worker processes...
r18638 def worker(ui, costperarg, func, staticargs, args):
'''run a function, possibly in parallel in multiple worker
processes.
returns a progress iterator
costperarg - cost of a single task
func - function to run
staticargs - arguments to pass to every invocation of the function
args - arguments to split into chunks, to pass to individual
workers
'''
if worthwhile(ui, costperarg, len(args)):
return _platformworker(ui, func, staticargs, args)
return func(*staticargs + (args,))
def _posixworker(ui, func, staticargs, args):
rfd, wfd = os.pipe()
workers = _numworkers(ui)
Bryan O'Sullivan
worker: fix a race in SIGINT handling...
r18708 oldhandler = signal.getsignal(signal.SIGINT)
signal.signal(signal.SIGINT, signal.SIG_IGN)
Bryan O'Sullivan
worker: handle worker failures more aggressively...
r18709 pids, problem = [], [0]
Bryan O'Sullivan
worker: allow a function to be run in multiple worker processes...
r18638 for pargs in partition(args, workers):
pid = os.fork()
if pid == 0:
Bryan O'Sullivan
worker: fix a race in SIGINT handling...
r18708 signal.signal(signal.SIGINT, oldhandler)
Bryan O'Sullivan
worker: allow a function to be run in multiple worker processes...
r18638 try:
os.close(rfd)
for i, item in func(*(staticargs + (pargs,))):
os.write(wfd, '%d %s\n' % (i, item))
os._exit(0)
except KeyboardInterrupt:
os._exit(255)
Bryan O'Sullivan
worker: catch all exceptions, try to exit usefully/safely
r18908 except: # re-raises (close enough for debugging anyway)
try:
ui.traceback()
finally:
os._exit(255)
Bryan O'Sullivan
worker: handle worker failures more aggressively...
r18709 pids.append(pid)
pids.reverse()
Bryan O'Sullivan
worker: allow a function to be run in multiple worker processes...
r18638 os.close(wfd)
fp = os.fdopen(rfd, 'rb', 0)
Bryan O'Sullivan
worker: handle worker failures more aggressively...
r18709 def killworkers():
# if one worker bails, there's no good reason to wait for the rest
for p in pids:
try:
os.kill(p, signal.SIGTERM)
except OSError, err:
if err.errno != errno.ESRCH:
raise
def waitforworkers():
for _ in pids:
st = _exitstatus(os.wait()[1])
if st and not problem:
problem[0] = st
killworkers()
t = threading.Thread(target=waitforworkers)
t.start()
Bryan O'Sullivan
worker: allow a function to be run in multiple worker processes...
r18638 def cleanup():
signal.signal(signal.SIGINT, oldhandler)
Bryan O'Sullivan
worker: handle worker failures more aggressively...
r18709 t.join()
status = problem[0]
if status:
if status < 0:
os.kill(os.getpid(), -status)
sys.exit(status)
Bryan O'Sullivan
worker: allow a function to be run in multiple worker processes...
r18638 try:
for line in fp:
l = line.split(' ', 1)
yield int(l[0]), l[1][:-1]
except: # re-raises
Bryan O'Sullivan
worker: handle worker failures more aggressively...
r18709 killworkers()
Bryan O'Sullivan
worker: allow a function to be run in multiple worker processes...
r18638 cleanup()
raise
cleanup()
Bryan O'Sullivan
worker: on error, exit similarly to the first failing worker...
r18707 def _posixexitstatus(code):
'''convert a posix exit status into the same form returned by
os.spawnv
returns None if the process was stopped instead of exiting'''
if os.WIFEXITED(code):
return os.WEXITSTATUS(code)
elif os.WIFSIGNALED(code):
return -os.WTERMSIG(code)
Bryan O'Sullivan
worker: allow a function to be run in multiple worker processes...
r18638 if os.name != 'nt':
_platformworker = _posixworker
Bryan O'Sullivan
worker: on error, exit similarly to the first failing worker...
r18707 _exitstatus = _posixexitstatus
Bryan O'Sullivan
worker: allow a function to be run in multiple worker processes...
r18638
Bryan O'Sullivan
worker: partition a list (of tasks) into equal-sized chunks
r18637 def partition(lst, nslices):
'''partition a list into N slices of equal size'''
n = len(lst)
chunk, slop = n / nslices, n % nslices
end = 0
for i in xrange(nslices):
start = end
end = start + chunk
if slop:
end += 1
slop -= 1
yield lst[start:end]